HIGH VOLTAGE LC ELECTRIC AND MAGNETIC FIELD MOTIVATOR
First Claim
1. A device that uses electrostatic and magnetic fields to produce motion, comprising of a motivator and a target,
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Abstract
An embodiment of an improved method of converting electrical energy to mechanical energy, where magnetic and electric fields are induced in a motivator comprised of a conductive magnetic mass. An induced electric charge in said mass is initiated by a charge on a conductive plate buried within said mass. Said plate is insulated by high voltage material with good dielectric properties (i.e. mica, glass, etc.). A resultant charge on said plate induces an opposite polarizing charge within each pole of said mass. A conductor that is magnetically coupled to the initiating voltage connects the poles and facilitates charge accumulation within said conductive mass. The pole faces on said mass induce opposite fields within a target. Said target'"'"'s charge accumulation can be augmented by other means as well. In both cases, said target'"'"'s electric charge will be attracted or repelled by the electric field in said motivator mass, producing motion (rotational, linear, vibrational, etc.). Said high voltage field generated by said plates buried within it said mass locks in said charge accumulation in and inhibits arcing. This configuration allows the use of higher voltages. Because this device can work at higher voltages, it can deliver more power.
48 Citations
7 Claims
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1. A device that uses electrostatic and magnetic fields to produce motion, comprising of a motivator and a target,
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2. A method to induce electric and magnetic fields in said motivator and on said target,
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3. A means to induce fields within said target,
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4. A means to induce an electric charge within a conductive mass and thereby polarizing said mass,
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5. A means of electrically polarizing said conductive mass by burying dielectrically insulated high voltage field emitters within said mass,
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6. A means to assist said polarizing charge accumulation with a low voltage field (produced through either magnetically coupling or other means).
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7. Whereby the fields induced in said target by said motivator (and possibly aided by other means) will be attracted and/or repelled by said motivator.
Specification